The Journal of Cell Biology,
Год журнала:
2024,
Номер
223(3)
Опубликована: Фев. 7, 2024
In
autophagy,
autophagosomes
deliver
the
lumenal
contents
to
lysosomes
for
degradation
via
autophagosome–lysosome
fusion.
contrast,
autophagosome
outer
membrane
components
were
recycled
autophagosomal
recycling
(ACR),
which
is
mediated
by
recycler
complex.
The
complex,
composed
of
SNX4,
SNX5,
and
SNX17,
cooperate
with
dynein–dynactin
complex
mediate
ACR.
However,
how
ACR
regulated
remains
unknown.
Here,
we
found
that
Rab32
family
proteins
localize
autolysosomes
are
required
ACR,
rather
than
other
or
lysosomal
Rab
proteins.
GTPase
activity
proteins,
governed
their
guanine
nucleotide
exchange
factor
GTPase-activating
protein,
plays
a
key
role
in
regulating
This
regulation
occurs
through
control
formation,
as
well
connection
between
recycler-cargo
dynactin
Together,
our
study
reveals
an
unidentified
family-dependent
regulatory
mechanism
Abstract
Exosomes
are
well-known
key
mediators
of
intercellular
communication
and
contribute
to
various
physiological
pathological
processes.
Their
biogenesis
involves
four
steps,
including
cargo
sorting,
MVB
formation
maturation,
transport
MVBs,
fusion
with
the
plasma
membrane.
Each
process
is
modulated
through
competition
or
coordination
multiple
mechanisms,
whereby
diverse
repertoires
molecular
cargos
sorted
into
distinct
subpopulations
exosomes,
resulting
in
high
heterogeneity
exosomes.
Intriguingly,
cancer
cells
exploit
strategies,
such
as
aberrant
gene
expression,
posttranslational
modifications,
altered
signaling
pathways,
regulate
biogenesis,
composition,
eventually
functions
exosomes
promote
progression.
Therefore,
exosome
biogenesis-targeted
therapy
being
actively
explored.
In
this
review,
we
systematically
summarize
recent
progress
understanding
machinery
how
it
regulated
context
cancer.
particular,
highlight
pharmacological
targeting
a
promising
therapeutic
strategy.
Nature Communications,
Год журнала:
2023,
Номер
14(1)
Опубликована: Авг. 18, 2023
Abstract
Mitochondrial
quality
control
is
critical
for
cardiac
homeostasis
as
these
organelles
are
responsible
generating
most
of
the
energy
needed
to
sustain
contraction.
Dysfunctional
mitochondria
normally
degraded
via
intracellular
degradation
pathways
that
converge
on
lysosome.
Here,
we
identified
an
alternative
mechanism
eliminate
when
lysosomal
function
compromised.
We
show
inhibition
leads
increased
secretion
in
large
extracellular
vesicles
(EVs).
The
EVs
produced
multivesicular
bodies,
and
their
release
independent
autophagy.
Deletion
small
GTPase
Rab7
cells
or
adult
mouse
heart
containing
ubiquitinated
cargos,
including
intact
mitochondria.
secreted
captured
by
macrophages
without
activating
inflammation.
Hearts
from
aged
mice
Danon
disease
patients
have
levels
indicating
activation
vesicular
during
pathophysiology.
Overall,
findings
establish
eliminated
through
endosomal
pathway
inhibited.
Cell Metabolism,
Год журнала:
2024,
Номер
36(1), С. 21 - 35
Опубликована: Янв. 1, 2024
Mitochondria
are
central
hubs
of
cellular
metabolism
and
tightly
connected
to
signaling
pathways.
The
dynamic
plasticity
mitochondria
fuse,
divide,
contact
other
organelles
flux
metabolites
is
their
function.
To
ensure
bona
fide
functionality
interconnectivity,
diverse
molecular
mechanisms
evolved.
An
ancient
long-overlooked
mechanism
the
generation
mitochondrial-derived
vesicles
(MDVs)
that
shuttle
selected
mitochondrial
cargoes
target
organelles.
Just
recently,
we
gained
significant
insight
into
functions
MDV
transport,
ranging
from
role
in
quality
control
immune
signaling,
thus
demonstrating
unexpected
physiological
aspects
transport.
This
review
highlights
origin
MDVs,
biogenesis,
cargo
selection,
with
a
specific
focus
on
contribution
transport
across
cell
organ
barriers.
Additionally,
implications
MDVs
peroxisome
neurodegeneration,
metabolism,
aging,
cancer
discussed.
Science Immunology,
Год журнала:
2024,
Номер
9(92)
Опубликована: Янв. 11, 2024
Hyperactive
TLR7
signaling
has
long
been
appreciated
as
driver
of
autoimmune
disease
in
mouse
models.
Recently,
gain-of-function
mutations
were
identified
a
monogenic
cause
human
lupus.
is
an
intracellular
transmembrane
receptor,
sensing
RNA
breakdown
products
within
late
endosomes.
Here,
we
show
that
endosome
dysfunction
leads
to
unrestricted
and
associated
with
The
endosomal
BORC
complex
together
the
small
GTPase
Arl8b
controls
levels
by
regulating
receptor
turnover.
This
requires
direct
interaction
between
TLR7-associated
trafficking
factor
Unc93b1
Arl8b.
We
UNC93B1
mutation
patient
childhood-onset
lupus,
which
results
reduced
accumulation.
Therefore,
failure
control
turnover
sufficient
break
immunological
tolerance
nucleic
acids.
Our
highlight
importance
intact
endomembrane
system
preventing
pathological
disease.
Nature Communications,
Год журнала:
2024,
Номер
15(1)
Опубликована: Март 6, 2024
Abstract
SARS-CoV-2,
the
causative
agent
of
COVID-19,
uses
host
endolysosomal
system
for
entry,
replication,
and
egress.
Previous
studies
have
shown
that
SARS-CoV-2
virulence
factor
ORF3a
interacts
with
lysosomal
tethering
HOPS
complex
blocks
HOPS-mediated
late
endosome
autophagosome
fusion
lysosomes.
Here,
we
report
infection
leads
to
hyperactivation
endosomal
small
GTP-binding
protein
Rab7,
which
is
dependent
on
expression.
We
also
observed
Rab7
in
naturally
occurring
variants
encoded
by
distinct
variants.
found
ORF3a,
Vps39,
sequesters
GAP
TBC1D5
displaces
from
this
complex.
Thus,
disrupts
GTP
hydrolysis
cycle
beneficial
viral
production,
whereas
GDP-locked
mutant
strongly
reduces
replication.
Hyperactivation
ORF3a-expressing
cells
impaired
CI-M6PR
retrieval
endosomes
trans-Golgi
network,
disrupting
biosynthetic
transport
newly
synthesized
hydrolases
Furthermore,
Rab7-
Arl8b-positive
compartments
was
strikingly
reduced
upon
As
egress
requires
Arl8b,
these
findings
suggest
ORF3a-mediated
serves
a
multitude
functions,
including
blocking
endolysosome
formation,
interrupting
hydrolases,
promoting
Nature Communications,
Год журнала:
2023,
Номер
14(1)
Опубликована: Апрель 19, 2023
Abstract
Accumulation
of
α-synuclein
into
toxic
oligomers
or
fibrils
is
implicated
in
dopaminergic
neurodegeneration
Parkinson’s
disease.
Here
we
performed
a
high-throughput,
proteome-wide
peptide
screen
to
identify
protein-protein
interaction
inhibitors
that
reduce
oligomer
levels
and
their
associated
cytotoxicity.
We
find
the
most
potent
inhibitor
disrupts
direct
between
C-terminal
region
CHarged
Multivesicular
body
Protein
2B
(CHMP2B),
component
Endosomal
Sorting
Complex
Required
for
Transport-III
(ESCRT-III).
show
impedes
endolysosomal
activity
via
this
interaction,
thereby
inhibiting
its
own
degradation.
Conversely,
restores
function
decreases
multiple
models,
including
female
male
human
cells
harboring
disease-causing
mutations.
Furthermore,
protects
neurons
from
α-synuclein-mediated
degeneration
hermaphroditic
C.
elegans
preclinical
disease
models
using
rats.
Thus,
α-synuclein-CHMP2B
potential
therapeutic
target
neurodegenerative
disorders.
Developmental Cell,
Год журнала:
2023,
Номер
58(15), С. 1315 - 1332
Опубликована: Июль 6, 2023
Membranes
are
essential
for
life.
They
act
as
semi-permeable
boundaries
that
define
cells
and
organelles.
In
addition,
their
surfaces
actively
participate
in
biochemical
reaction
networks,
where
they
confine
proteins,
align
partners,
directly
control
enzymatic
activities.
Membrane-localized
reactions
shape
cellular
membranes,
the
identity
of
organelles,
compartmentalize
processes,
can
even
be
source
signaling
gradients
originate
at
plasma
membrane
reach
into
cytoplasm
nucleus.
The
surface
is,
therefore,
an
platform
upon
which
myriad
processes
scaffolded.
this
review,
we
summarize
our
current
understanding
biophysics
biochemistry
membrane-localized
with
particular
focus
on
insights
derived
from
reconstituted
systems.
We
discuss
how
interplay
factors
results
self-organization,
condensation,
assembly,
activity,
emergent
properties
them.
European Journal of Pharmaceutics and Biopharmaceutics,
Год журнала:
2024,
Номер
203, С. 114460 - 114460
Опубликована: Авг. 31, 2024
Glioblastoma
(GBM)
stands
for
the
most
common
and
aggressive
type
of
brain
tumour
in
adults.
It
is
highly
invasive,
which
explains
its
short
rate
survival.
Little
known
about
risk
factors,
current
therapy
still
ineffective.
Hence,
efforts
are
underway
to
develop
novel
effective
treatment
approaches
against
this
cancer.
Exosomes
being
explored
as
a
promising
strategy
conveying
delivering
therapeutic
cargo
GBM
cells.
They
can
fuse
with
cell
membrane
and,
consequently,
serve
delivery
systems
context.
Due
their
nanoscale
size,
exosomes
cross
blood-brain
barrier
(BBB),
constitutes
significant
hurdle
chemotherapeutic
drugs
used
GBM.
subsequently
inhibit
oncogenes,
activate
suppressor
genes,
induce
immune
responses,
control
growth.
However,
despite
representing
tool
GBM,
further
research
clinical
studies
regarding
exosome
biology,
engineering,
applications
need
be
completed.
Here,
we
sought
review
application
through
an
in-depth
analysis
scientific
on
entire
process,
from
isolation
purification
design
transformation
into
anti-oncogenic
drug
systems.
Surface
modification
enhance
BBB
penetration
GBM-cell
targeting
also
topic
discussion.